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A Survey of Visible S~+ Emission in Io's Plasma Torus During the Hisaki Epoch

机译:的调查可见S ~ +发射Io的等离子体环在Hisaki时代

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To complement Hisaki's ultraviolet monitoring of the Io plasma torus, a ground-based campaign assembled a comprehensive data set at visible wavelengths with the ARC 3.5-m telescope at Apache Point Observatory. This work concentrates on the bright S~+ emissions in these data. Recurrent traits in the intensity and location are discerned as a function of Jovian longitude (λ_(III)). The longitudinal brightness structure differs from past data sets in the visible but is broadly consistent with that of Io's auroral footprint and concurrent Hisaki extreme ultraviolet measurements. Positions of the ribbon feature with λ_(III) confirm that it exhibits a radial wobbling motion that is lesser than the centrifugal limit along a given L-shell. We also find that the radial separation between the cold torus and the ribbon is modulated as Jupiter rotates. The torus is displaced 0.13 R_J dawnward, on average, by an electric field with mean strength 3.8 mV/m, consistent with that inferred by analysis of Hisaki's dawn-dusk brightness asymmetry. The lesser visible brightness asymmetry is uncorrelated to this field strength, however. S~+ emissions are enhanced downstream of Io, principally at Jovian dawn. Io interacts with the densest region at specific Jovian longitudes and local times; near λ_(III) ~130° and dawn the ribbon is farthest from Jupiter but still passes radially interior to the satellite. The electron density sweeping past Io and/or its radial proximity to the passing ribbon may also influence brightness, but S~+ emissions are not governed by a single predominant driver.
机译:补充Hisaki紫外线监测Io等离子体环面,地面运动组装一个全面的数据集在可见的波长与弧3.5米望远镜Apache天文台。明亮的S ~ +排放在这些数据。复发性特征的强度和位置看见威风凛凛的经度的函数吗(λ_(3))。不同于可见的,但过去的数据集广泛一致的Io的极光足迹和并发Hisaki极端紫外线测量。特性与λ_ (III)确认它的展品较小的径向摆动运动离心限制在一个给定的l层。发现径向冷之间的分离木星环和丝带调制旋转。dawnward,平均电场平均强度3.8 mV / m,一致通过分析Hisaki dawn-dusk的推断亮度不对称。亮度不对称是不相关的然而,磁场强度。增强下游Io,主要是威风凛凛的黎明。特定的威风凛凛的经度和当地时间;λ_ (III) ~ 130°和黎明丝带是最远的从木星,但仍然通过径向内部卫星。过去的Io和/或它的径向距离通过带也可能影响亮度,但是S ~ +排放不是由一个单一的主要的司机。

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